论文标题

与海森堡交换和各向异性的木块板中

Magnon bands in pyrochlore slabs with Heisenberg exchange and anisotropies

论文作者

Jyothis, V. V., Patra, Bibhabasu, Chandra, V. Ravi

论文摘要

pyrochlore晶格是一个多功能场所,旨在探测磁有序状态的特性,这些状态像dzyaloshinskii-moriya相互作用或单离子各向异性一样受到各向异性术语的诱导或扰动。最近研究了一些这样的有序状态作为拓扑镁和相关表面状态的前体。同时,在沿晶格的高对称方向的这种晶格结构的薄膜生长薄膜中,最近取得了进展。在这两种情况下,对有限板相关的哈密顿量相关的磁激发的描述都是分析这些系统物理学的必要步骤。我们在此处研究平板几何形状的磁杆带,以使用海森贝格交换,dzyaloshinskii-moriya相互作用和自旋冰路各向异性,在pyrochlore晶格上进行一类自旋模型。对于一系列模型参数,对于铁磁和抗铁磁交换,我们计算了不同板的经典基础状态,并确定上方的旋转波激发。我们分析了铁磁性阶段,全范围的阶段和共面阶段,并评估了垂直于$ [111] $,$ [100] $和$ [110] $方向的面向板的磁通分散体。对于所有考虑的阶段,取决于平板方向,镁带结构可能是非磁性的,我们突出显示了与此点相比的三个方向的差异。最后,我们介绍了我们研究的阶段中所有三个平板方向的表面局部元素的细节。对于铁磁性splay阶段和全范围的相位,我们通过计算与之相关的宏伟浆果曲率和Weyl电荷或Chern数字来分析与点脱位或散装谱中的点变性或淋巴结线相关的表面状态。

The pyrochlore lattice is a versatile venue to probe the properties of magnetically ordered states induced or perturbed by anisotropic terms like the Dzyaloshinskii-Moriya interactions or single-ion anisotropy. Several such ordered states have been investigated recently as precursors of topological magnons and the associated surface states. In parallel, there has been recent progress in growing thin films of magnetic materials with this lattice structure along high symmetry directions of the lattice. In both cases, an account of the magnetic excitations of relevant Hamiltonians for finite slabs is a necessary step in the analysis of the physics of these systems. We study here magnon bands in the slab geometry for a class of spin models on the pyrochlore lattice with Heisenberg exchange, Dzyaloshinskii-Moriya interaction and spin-ice anisotropy. For a range of model parameters, for both ferromagnetic and antiferromagnetic exchange, we compute the classical ground states for different slab orientations and determine the spin wave excitations above them. We analyze the ferromagnetic splay phase, the all-in-all-out phase and a coplanar phase and evaluate magnon dispersions for slabs oriented perpendicular to the $[111]$, $[100]$ and $[110]$ directions. For all the phases considered, depending on the slab orientation, magnon band structures can be non-reciprocal and we highlight the differences in the three orientations from this point-of-view. Finally, we present details of the surface localized magnons for all the three slab orientations in the phases we study. For the ferromagnetic splay phase and the all-in-all-out phase we analyze surface states associated with point degeneracies or nodal lines in the bulk spectrum by computing the magnonic Berry curvature and Weyl charges or Chern numbers associated with it.

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